李凤志, 刘迎曦, 罗钟铉, 李毅. 大气压力对织物热湿特性影响的数值研究[J]. 力学与实践, 2003, 25(4). DOI: 10.6052/1000-0992-2002-261
引用本文: 李凤志, 刘迎曦, 罗钟铉, 李毅. 大气压力对织物热湿特性影响的数值研究[J]. 力学与实践, 2003, 25(4). DOI: 10.6052/1000-0992-2002-261
EFFECT OF ATMOSPHERIC PRESSURE ON HEAT AND MOISTURE TRANSPORT WITHIN HYGROSCOPIC FABRICS[J]. MECHANICS IN ENGINEERING, 2003, 25(4). DOI: 10.6052/1000-0992-2002-261
Citation: EFFECT OF ATMOSPHERIC PRESSURE ON HEAT AND MOISTURE TRANSPORT WITHIN HYGROSCOPIC FABRICS[J]. MECHANICS IN ENGINEERING, 2003, 25(4). DOI: 10.6052/1000-0992-2002-261

大气压力对织物热湿特性影响的数值研究

EFFECT OF ATMOSPHERIC PRESSURE ON HEAT AND MOISTURE TRANSPORT WITHIN HYGROSCOPIC FABRICS

  • 摘要: 为了模拟多孔织物内复杂的热湿传递过程,为不同大气压力条件下服装的热湿舒适性设计提供理论基础,从织物内热湿传输机理角度出发,建立了考虑大气压力影响的织物热湿传输耦合模型,比较了常压下的理论预测和实验结果,通过数值算例考察了大气压力对织物热湿特性的影响.

     

    Abstract: In order to clarify the effect of the atmosphericpressure on the heat and moisture transfer within hygroscopic fabrics,based on the improved sorption rate equation and the Darcy's law, ananalytical model is proposed. From the fit between thetheoretically calculated temperature changes and those measured fromexperiments, it is shown that the models can predict the simultaneousheat transfer that is coupled in the moisture-diffusion process duringhumidity transients. Furthermore, the temperature and moistureconcentration distribution in the inter-fiber void space at differentatmospheric pressure conditions are numerically computed and compared.It shows that at the low atmospheric pressure, thetemperature peak and the density of vapor are higher than those at thehigh atmospheric pressure.

     

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